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Bioinspired structural color patch with anisotropic surface adhesion

机译:具有各向异性表面粘附的生物悬浮结构色素

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摘要

Patch plays an important role in clinical medicine for its broad applications in tissue repair and regeneration. Here, inspired by the diverse adhesion, anti-adhesion, and responsive structural color phenomena in biological interfaces, we present a hybrid hydrogel film with an adhesive polydopamine (PDA) layer and an anti-adhesive poly(ethylene glycol) diacrylate (PEGDA) layer in an inverse opal scaffold. It was demonstrated that the resultant hydrogel film could serve as a functional tissue patch with an excellent adhesion property on one surface for repairing injured tissues and an anti-adhesion property on the other surface for preventing adverse adhesion. Besides, because of the responsive structural color, the patch was imparted with self-reporting mechanical capability, which could provide a real-time color-sensing feedback to monitor the heartbeat activity. Moreover, the catechol groups on PDA imparted the patch with high tissue adhesiveness and self-healing capability in vivo. These features give the bioinspired patch high potential in biomedical applications.
机译:补丁在临床医学中发挥着重要作用,以其在组织修复和再生中的广泛应用。这里,通过生物界面中的多种粘附,抗粘附和响应性结构颜色现象的启发,我们将杂交水凝胶膜与粘合多斑嗪(PDA)层和抗粘合剂聚(乙二醇)二丙烯酸酯(PEGDA)层呈现在逆蛋白石脚手架中。结果证明,所得水凝胶膜可以用作功能组织贴剂,其在一个表面上具有优异的粘附性,用于修复其他表面上的受损组织和抗粘附性,以防止不利粘附。此外,由于响应性的结构颜色,贴片以自我报告的机械能力赋予,这可以提供实时色敏反馈以监测心跳活动。此外,PDA上的儿茶酚基团赋予贴剂具有高组织粘合性和体内自愈合能力。这些特征为生物医学应用提供了生物悬浮的贴片高潜力。

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